This paper highlights and discusses the recent advances in thermochemical hydrogen production with the copper–chlorine (Cu–Cl) cycle. Extended operation of HCl/CuCl electrolysis is achieved, and its performance assessment is conducted. Advances in the development of improved electrodes are presented for various electrode materials. Experimental studies for a 300 cm2 electrolytic cell show a stable current density and production at 98% of the theoretical hydrogen production rate. Long term testing of the electrolyzer for over 1600 h also shows a stable cell voltage. Different systems to address integration challenges are also examined for the integration of electrolysis/hydrolysis and thermolysis/electrolysis processes. New results from expe...
This research focuses on thermodynamic analysis of the copper chlorine cycles. The cycles were simul...
Sustainable methods of clean fuel production are needed in the face of depleting oil reserves and to...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper highlights and discusses the recent advances in thermochemical hydrogen production with t...
Recent advances are reported by an international team on research and development of the copper chlo...
A number of thermochemical cycles have been investigated to produce hydrogen from water. However, mo...
This paper presents recent advances by an international team which is developing the thermochemical ...
Hydrogen is one of the most important energy carriers, clean fuels, and storage media in the upcomin...
This paper focuses on the various development areas of the copper-chlorine (Cu–Cl) cycle for hydroge...
The copper–chlorine (Cu–Cl) thermochemical hydrogen production cycle consists of three chemical reac...
This second of two companion papers presents the latest advances of an international team on the the...
The Copper-Chlorine (Cu-Cl) thermochemical water splitting cycle is one of the most attractive alter...
Advancement of the thermochemical copper–chlorine (Cu–Cl) cycle for hydrogen production is reviewed ...
This paper presents recent Canadian advances in nuclear-based production of hydrogen by electrolysis...
Copper–chlorine thermochemical cycles for hydrogen production are very promising water splitting cyc...
This research focuses on thermodynamic analysis of the copper chlorine cycles. The cycles were simul...
Sustainable methods of clean fuel production are needed in the face of depleting oil reserves and to...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper highlights and discusses the recent advances in thermochemical hydrogen production with t...
Recent advances are reported by an international team on research and development of the copper chlo...
A number of thermochemical cycles have been investigated to produce hydrogen from water. However, mo...
This paper presents recent advances by an international team which is developing the thermochemical ...
Hydrogen is one of the most important energy carriers, clean fuels, and storage media in the upcomin...
This paper focuses on the various development areas of the copper-chlorine (Cu–Cl) cycle for hydroge...
The copper–chlorine (Cu–Cl) thermochemical hydrogen production cycle consists of three chemical reac...
This second of two companion papers presents the latest advances of an international team on the the...
The Copper-Chlorine (Cu-Cl) thermochemical water splitting cycle is one of the most attractive alter...
Advancement of the thermochemical copper–chlorine (Cu–Cl) cycle for hydrogen production is reviewed ...
This paper presents recent Canadian advances in nuclear-based production of hydrogen by electrolysis...
Copper–chlorine thermochemical cycles for hydrogen production are very promising water splitting cyc...
This research focuses on thermodynamic analysis of the copper chlorine cycles. The cycles were simul...
Sustainable methods of clean fuel production are needed in the face of depleting oil reserves and to...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...